Modeling of a Pilot-Scale Fixed-Bed Reactor for Dehydration of 2,3-Butanediol to 1,3-Butadiene and Methyl Ethyl Ketone

A 1D heterogeneous reactor model accounting for interfacial and intra-particle gradients was developed to simulate the dehydration of 2,3-Butanediol (2,3-BDO) to 1,3-Butadiene (1,3-BD) and Methyl Ethyl Ketone (MEK) over an amorphous calcium phosphate (a-CP) catalyst in a pilot-scale fixed-bed reacto...

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Main Author: Daesung Song
Format: Article
Language:English
Published: MDPI AG 2018-02-01
Series:Catalysts
Subjects:
Online Access:http://www.mdpi.com/2073-4344/8/2/72
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spelling doaj-fe6f321dd67842c58fa4861dfcb63a8c2020-11-24T22:06:44ZengMDPI AGCatalysts2073-43442018-02-01827210.3390/catal8020072catal8020072Modeling of a Pilot-Scale Fixed-Bed Reactor for Dehydration of 2,3-Butanediol to 1,3-Butadiene and Methyl Ethyl KetoneDaesung Song0Global Technology, SK Innovation, 325 Exporo, Yuseong-gu, Daejeon 305-712, KoreaA 1D heterogeneous reactor model accounting for interfacial and intra-particle gradients was developed to simulate the dehydration of 2,3-Butanediol (2,3-BDO) to 1,3-Butadiene (1,3-BD) and Methyl Ethyl Ketone (MEK) over an amorphous calcium phosphate (a-CP) catalyst in a pilot-scale fixed-bed reactor. The developed model was validated with experimental data in terms of a fluid temperature profile along with the length of the catalyst bed, 2,3-BDO conversion, and selectivity for the major products, 1,3-BD and MEK, at the outlet of the reactor. The fluid temperature profile obtained from the model along the length of the catalyst bed coincides satisfactorily with the experimental observations. The difference between the experimental data and the 1D heterogeneous reactor model prediction for 2,3-BDO conversion and selectivity of 1,3-BD and MEK were 0.1%, 9 wt %, and 2 wt %, respectively. In addition, valuable insights related to the feeding system of a commercial-scale plant were made through troubleshooting of the pilot tests. Notably, if the feed including only 2,3-BDO and furnaces that increase the temperature of the feed to the reaction temperature were used in a commercial plant, the feeding system could not be operational because of the presence of heavy chemicals considered oligomers of 2,3-BDO.http://www.mdpi.com/2073-4344/8/2/722,3-Butanediol dehydration1,3-ButadieneMethyl Ethyl Ketoneamorphous calcium phosphatereactor modelingpilot-scale fixed-bed reactor
collection DOAJ
language English
format Article
sources DOAJ
author Daesung Song
spellingShingle Daesung Song
Modeling of a Pilot-Scale Fixed-Bed Reactor for Dehydration of 2,3-Butanediol to 1,3-Butadiene and Methyl Ethyl Ketone
Catalysts
2,3-Butanediol dehydration
1,3-Butadiene
Methyl Ethyl Ketone
amorphous calcium phosphate
reactor modeling
pilot-scale fixed-bed reactor
author_facet Daesung Song
author_sort Daesung Song
title Modeling of a Pilot-Scale Fixed-Bed Reactor for Dehydration of 2,3-Butanediol to 1,3-Butadiene and Methyl Ethyl Ketone
title_short Modeling of a Pilot-Scale Fixed-Bed Reactor for Dehydration of 2,3-Butanediol to 1,3-Butadiene and Methyl Ethyl Ketone
title_full Modeling of a Pilot-Scale Fixed-Bed Reactor for Dehydration of 2,3-Butanediol to 1,3-Butadiene and Methyl Ethyl Ketone
title_fullStr Modeling of a Pilot-Scale Fixed-Bed Reactor for Dehydration of 2,3-Butanediol to 1,3-Butadiene and Methyl Ethyl Ketone
title_full_unstemmed Modeling of a Pilot-Scale Fixed-Bed Reactor for Dehydration of 2,3-Butanediol to 1,3-Butadiene and Methyl Ethyl Ketone
title_sort modeling of a pilot-scale fixed-bed reactor for dehydration of 2,3-butanediol to 1,3-butadiene and methyl ethyl ketone
publisher MDPI AG
series Catalysts
issn 2073-4344
publishDate 2018-02-01
description A 1D heterogeneous reactor model accounting for interfacial and intra-particle gradients was developed to simulate the dehydration of 2,3-Butanediol (2,3-BDO) to 1,3-Butadiene (1,3-BD) and Methyl Ethyl Ketone (MEK) over an amorphous calcium phosphate (a-CP) catalyst in a pilot-scale fixed-bed reactor. The developed model was validated with experimental data in terms of a fluid temperature profile along with the length of the catalyst bed, 2,3-BDO conversion, and selectivity for the major products, 1,3-BD and MEK, at the outlet of the reactor. The fluid temperature profile obtained from the model along the length of the catalyst bed coincides satisfactorily with the experimental observations. The difference between the experimental data and the 1D heterogeneous reactor model prediction for 2,3-BDO conversion and selectivity of 1,3-BD and MEK were 0.1%, 9 wt %, and 2 wt %, respectively. In addition, valuable insights related to the feeding system of a commercial-scale plant were made through troubleshooting of the pilot tests. Notably, if the feed including only 2,3-BDO and furnaces that increase the temperature of the feed to the reaction temperature were used in a commercial plant, the feeding system could not be operational because of the presence of heavy chemicals considered oligomers of 2,3-BDO.
topic 2,3-Butanediol dehydration
1,3-Butadiene
Methyl Ethyl Ketone
amorphous calcium phosphate
reactor modeling
pilot-scale fixed-bed reactor
url http://www.mdpi.com/2073-4344/8/2/72
work_keys_str_mv AT daesungsong modelingofapilotscalefixedbedreactorfordehydrationof23butanediolto13butadieneandmethylethylketone
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